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◆ Critical Reviews in Analytical Chemistry2026-07-31· Environmental chemistry

Green Electrochemical Nano-Biosensors for Sustainable Arsenic Speciation and Monitoring

Omar Ramadan, ABM Sharif Hossain, Ahmed A. Allam, Rehab Mahmoud, Waleed Alahmad, Charoenkwan Kraiya

原始摘要(英文原文)· Original abstract
Arsenic contamination in food and water remains a major global health issue, particularly across South and Southeast Asia. Although advanced analytical methods such as ICP-MS and GFAAS offer high sensitivity and precision, they are costly, laboratory-bound, and require skilled operators. In contrast, electrochemical nano-biosensors have emerged as a practical and cost-effective alternative, offering low cost, rapid detection, and portability suitable for field applications. This review recent advances in developing green-engineered nanomaterials for electrochemical arsenic detection, emphasizing eco-friendly synthesis routes and environmentally responsible design principles. Green fabrication of metal and metal-oxide nanoparticles, carbon-based materials, and hybrid composites has significantly improved sensor performance by enhancing surface area, conductivity, and catalytic activity while minimizing environmental impact. Key biosensing strategies are discussed, including aptamer-, enzyme-, and whole-cell-based systems capable of distinguishing between arsenic species. The review also highlights innovations in biodegradable polymers, waste-derived carbons, and renewable substrates that align with circular-economy principles. Finally, future perspectives highlight the integration of Internet of Things (IoT) and artificial intelligence (AI) technologies for real-time, decentralized monitoring. Collectively, these green nano-biosensing systems represent a critical step toward accessible, and efficient arsenic detection for global water safety.
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